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耳蜗全神经动作电位波形与其强度函数之间的关系。

Relation between the waveform of the cochlear whole nerve action potential and its intensity function.

作者信息

Legouiz J P, Teas D C, Beagley H A, Remond M C

出版信息

Acta Otolaryngol. 1978 Mar-Apr;85(3-4):177-83. doi: 10.3109/00016487809111924.

Abstract

The whole-nerve action potential (AP) was recorded by intracochlear electrodes in the guinea-pig. As is well known, in normal conditions, the AP elicited by tone bursts displays negative and positive deflections. Inactivation of the central end of the nerve at the internal auditory meatus (IAM), by introduction of a few drops of KC1 solution, or by mechanical pressure, produces a change in the wave shape of AP which is transformed into a single negative deflection. The relation of the amplitude of the monophasic AP to the intensity of the tone burst is monotonic, in contrast to the classical two-slope variation observed in normal conditions. These results are interpreted by the disappearance of a positive component of the response produced at the IAM. The convolution of the monophasic unit AP would explain the monotonic intensity function.

摘要

通过豚鼠的耳蜗内电极记录全神经动作电位(AP)。众所周知,在正常情况下,短纯音诱发的动作电位呈现负向和正向偏转。通过在内耳道(IAM)处滴入几滴氯化钾溶液或施加机械压力使神经中枢端失活,会使动作电位的波形发生变化,转变为单一的负向偏转。与正常情况下观察到的经典双斜率变化不同,单相动作电位的幅度与短纯音强度之间的关系是单调的。这些结果可通过在IAM处产生的反应的正向成分消失来解释。单相单位动作电位的卷积可以解释单调强度函数。

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